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Ergebnis 17 von 203417

Details

Autor(en) / Beteiligte
Titel
Oxidized phospholipids are proinflammatory and proatherogenic in hypercholesterolaemic mice
Ist Teil von
  • Nature (London), 2018-06, Vol.558 (7709), p.301-306
Ort / Verlag
England: Nature Publishing Group
Erscheinungsjahr
2018
Link zum Volltext
Beschreibungen/Notizen
  • Oxidized phospholipids (OxPL) are ubiquitous, are formed in many inflammatory tissues, including atherosclerotic lesions, and frequently mediate proinflammatory changes . Because OxPL are mostly the products of non-enzymatic lipid peroxidation, mechanisms to specifically neutralize them are unavailable and their roles in vivo are largely unknown. We previously cloned the IgM natural antibody E06, which binds to the phosphocholine headgroup of OxPL, and blocks the uptake of oxidized low-density lipoprotein (OxLDL) by macrophages and inhibits the proinflammatory properties of OxPL . Here, to determine the role of OxPL in vivo in the context of atherogenesis, we generated transgenic mice in the Ldlr background that expressed a single-chain variable fragment of E06 (E06-scFv) using the Apoe promoter. E06-scFv was secreted into the plasma from the liver and macrophages, and achieved sufficient plasma levels to inhibit in vivo macrophage uptake of OxLDL and to prevent OxPL-induced inflammatory signalling. Compared to Ldlr mice, Ldlr E06-scFv mice had 57-28% less atherosclerosis after 4, 7 and even 12 months of 1% high-cholesterol diet. Echocardiographic and histologic evaluation of the aortic valves demonstrated that E06-scFv ameliorated the development of aortic valve gradients and decreased aortic valve calcification. Both cholesterol accumulation and in vivo uptake of OxLDL were decreased in peritoneal macrophages, and both peritoneal and aortic macrophages had a decreased inflammatory phenotype. Serum amyloid A was decreased by 32%, indicating decreased systemic inflammation, and hepatic steatosis and inflammation were also decreased. Finally, the E06-scFv prolonged life as measured over 15 months. Because the E06-scFv lacks the functional effects of an intact antibody other than the ability to bind OxPL and inhibit OxLDL uptake in macrophages, these data support a major proatherogenic role of OxLDL and demonstrate that OxPL are proinflammatory and proatherogenic, which E06 counteracts in vivo. These studies suggest that therapies inactivating OxPL may be beneficial for reducing generalized inflammation, including the progression of atherosclerosis, aortic stenosis and hepatic steatosis.
Sprache
Englisch
Identifikatoren
ISSN: 0028-0836
eISSN: 1476-4687
DOI: 10.1038/s41586-018-0198-8
Titel-ID: cdi_proquest_journals_2067321255
Format
Schlagworte
Animal genetic engineering, Animals, Antibodies, Aorta, Aortic stenosis, Aortic valve, Aortic valve stenosis, Aortic Valve Stenosis - drug therapy, Aortic Valve Stenosis - metabolism, Aortic Valve Stenosis - pathology, Apolipoprotein E, Apolipoproteins, Apoptosis, Arteriosclerosis, Atherogenesis, Atherosclerosis, Atherosclerosis - chemically induced, Atherosclerosis - drug therapy, Atherosclerosis - genetics, Atherosclerosis - metabolism, Blood lipids, Calcification, Calcification (ectopic), Calcification (Physiology), Cholesterol, Cholesterol - administration & dosage, Cholesterol - pharmacology, Disease Progression, Enzymes, Fatty liver, Fatty Liver - drug therapy, Fatty Liver - metabolism, Fatty Liver - pathology, Female, Genetic engineering, Heart valve diseases, High cholesterol diet, Hypercholesterolemia, Hypercholesterolemia - metabolism, Hypercholesterolemia - pathology, Immunoglobulin M, Immunoglobulin M - genetics, Immunoglobulin M - immunology, Immunoglobulin M - therapeutic use, Immunoglobulins, In vivo methods and tests, Inflammation, Inflammation - drug therapy, Inflammation - metabolism, Inflammation - pathology, Lesions, Lipid peroxidation, Lipids, Lipoproteins, Lipoproteins, LDL - metabolism, Liver, Low density lipoprotein receptors, Low density lipoproteins, Macrophages, Macrophages, Peritoneal - metabolism, Membrane lipids, Mice, Mice, Inbred C57BL, Mice, Transgenic, Oxidation-Reduction, Oxidation-reduction reaction, Oxidation-reduction reactions, Peritoneum, Peroxidation, Phenotypes, Phosphocholine, Phospholipids, Phospholipids - antagonists & inhibitors, Phospholipids - chemistry, Phospholipids - immunology, Phospholipids - metabolism, Phosphorylcholine - immunology, Physiological aspects, Plant lipids, Plasma levels, Receptors, LDL - deficiency, Receptors, LDL - genetics, Rodents, Single-Chain Antibodies - genetics, Single-Chain Antibodies - immunology, Single-Chain Antibodies - therapeutic use, Steatosis, Stenosis, Transgenic animals, Transgenic mice

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